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介绍一种代谢组学研究中二维 NMR 定量分析的新方法。

Introduction of a new method for two-dimensional NMR quantitative analysis in metabolomics studies.

机构信息

Division of Natural Sciences, New College of Florida, 5800 Bay Shore Road, Sarasota, FL, 34243, USA.

Division of Natural Sciences, New College of Florida, 5800 Bay Shore Road, Sarasota, FL, 34243, USA.

出版信息

Anal Biochem. 2020 May 15;597:113692. doi: 10.1016/j.ab.2020.113692. Epub 2020 Mar 18.

Abstract

NMR is one of the most important platforms for metabolomic studies. Though 2D NMR has been applied in metabolomics, most applications have mainly focused on metabolite identification whilst limitations causing a bottle-neck for applying high-throughput 2D NMR data for quantity related statistical analysis lies on the data interpretation methods. In this study, instead of using the traditional methods of calculating the 2D NMR data to search for the important features, a new procedure, which applies the high-resolution 1D NMR metabolites chemical shift range to filter the 2D NMR data, was developed. This new method was demonstrated using both a mixture of standard metabolites and a case study on plant extracts using 2D non-uniform sampling (NUS) total correlation spectroscopy (TOCSY) data. As a result, our method successfully filtered out the important features with a high success rate, and the extracted peaks showed high linearity between the calculated intensities and the concentrations of metabolites from a range of 0.05 mM-2 mM. The method was successfully applied to a metabolomics case study which included 18 Begonia samples that showed excellent peak extractions. In summary, our study has provided a practical new 2D NMR data extraction method for use in future metabolomics studies.

摘要

NMR 是代谢组学研究的最重要平台之一。尽管二维 NMR 已应用于代谢组学,但大多数应用主要集中在代谢物鉴定上,而限制将高通量二维 NMR 数据应用于与数量相关的统计分析的瓶颈在于数据解释方法。在这项研究中,我们没有使用传统的计算二维 NMR 数据的方法来寻找重要特征,而是开发了一种新的程序,该程序将高分辨率的 1D NMR 代谢物化学位移范围应用于过滤二维 NMR 数据。我们使用标准代谢物混合物和使用二维非均匀采样(NUS)总相关光谱(TOCSY)数据的植物提取物案例研究对该新方法进行了演示。结果表明,我们的方法能够成功地以高成功率过滤掉重要特征,并且提取的峰在计算强度和浓度之间表现出高度线性,范围为 0.05 mM-2 mM。该方法成功地应用于包括 18 个Begonia 样本的代谢组学案例研究,显示出优异的峰提取效果。总之,我们的研究为未来的代谢组学研究提供了一种实用的新型二维 NMR 数据提取方法。

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